Chen Lawrence R, Li Jia, Spasojevic Mina, Adams Rhys
Opt Express. 2013 Aug 26;21(17):19624-33. doi: 10.1364/OE.21.019624.
We describe the use of various silicon photonic device technologies to implement microwave photonic filters (MPFs). We demonstrate four-wave mixing in a silicon nanowire waveguide (SNW) to increase the number of taps for MPFs based on finite impulse response filter designs. Using a 12 mm long SNW reduces the footprint by five orders of magnitude compared to silica highly nonlinear fiber while only requiring approximately two times more input power. We also demonstrate optical delays based on serial sidewall Bragg grating arrays and step-chirped sidewall Bragg gratings in silicon waveguides. We obtain up to 63 ps delay in discrete steps from 15 ps to 32 ps over a wide bandwidth range from 33 nm to at least 62 nm. These components can be integrated with other silicon-based components such as integrated spectral shapers and modulators to realize a fully integrated MPF.
我们描述了使用各种硅光子器件技术来实现微波光子滤波器(MPF)。我们展示了在硅纳米线波导(SNW)中的四波混频,以增加基于有限脉冲响应滤波器设计的MPF的抽头数量。与二氧化硅高非线性光纤相比,使用12毫米长的SNW可将占地面积减少五个数量级,而仅需要大约两倍的输入功率。我们还展示了基于硅波导中的串行侧壁布拉格光栅阵列和步进啁啾侧壁布拉格光栅的光延迟。我们在33纳米至至少62纳米的宽带范围内,以离散步骤从15皮秒到32皮秒获得高达63皮秒的延迟。这些组件可以与其他硅基组件(如集成光谱整形器和调制器)集成,以实现完全集成的MPF。